cvp_hfi_api.h 7.8 KB

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  1. /* SPDX-License-Identifier: GPL-2.0-only */
  2. /*
  3. * Copyright (c) 2018-2021, The Linux Foundation. All rights reserved.
  4. * Copyright (c) 2023 Qualcomm Innovation Center, Inc. All rights reserved.
  5. */
  6. #ifndef __CVP_HFI_API_H__
  7. #define __CVP_HFI_API_H__
  8. #include <linux/log2.h>
  9. #include <linux/platform_device.h>
  10. #include <linux/types.h>
  11. #include <linux/errno.h>
  12. #include <linux/hash.h>
  13. #include "msm_cvp_core.h"
  14. #include "msm_cvp_resources.h"
  15. #include "cvp_hfi_helper.h"
  16. #define CONTAINS(__a, __sz, __t) (\
  17. (__t >= __a) && \
  18. (__t < __a + __sz) \
  19. )
  20. #define OVERLAPS(__t, __tsz, __a, __asz) (\
  21. (__t <= __a) && \
  22. (__t + __tsz >= __a + __asz) \
  23. )
  24. #define CVP_VERSION_LENGTH 128
  25. /* 16 encoder and 16 decoder sessions */
  26. #define CVP_MAX_SESSIONS 32
  27. #define HFI_VERSION_MAJOR_MASK 0xFF000000
  28. #define HFI_VERSION_MAJOR_SHFIT 24
  29. #define HFI_VERSION_MINOR_MASK 0x00FFFFE0
  30. #define HFI_VERSION_MINOR_SHIFT 5
  31. #define HFI_VERSION_BRANCH_MASK 0x0000001F
  32. #define HFI_VERSION_BRANCH_SHIFT 0
  33. enum cvp_status {
  34. CVP_ERR_NONE = 0x0,
  35. CVP_ERR_FAIL = 0x80000000,
  36. CVP_ERR_ALLOC_FAIL,
  37. CVP_ERR_ILLEGAL_OP,
  38. CVP_ERR_BAD_PARAM,
  39. CVP_ERR_BAD_HANDLE,
  40. CVP_ERR_NOT_SUPPORTED,
  41. CVP_ERR_BAD_STATE,
  42. CVP_ERR_MAX_CLIENTS,
  43. CVP_ERR_IFRAME_EXPECTED,
  44. CVP_ERR_HW_FATAL,
  45. CVP_ERR_BITSTREAM_ERR,
  46. CVP_ERR_INDEX_NOMORE,
  47. CVP_ERR_SEQHDR_PARSE_FAIL,
  48. CVP_ERR_INSUFFICIENT_BUFFER,
  49. CVP_ERR_BAD_POWER_STATE,
  50. CVP_ERR_NO_VALID_SESSION,
  51. CVP_ERR_TIMEOUT,
  52. CVP_ERR_CMDQFULL,
  53. CVP_ERR_START_CODE_NOT_FOUND,
  54. CVP_ERR_NOC_ERROR,
  55. CVP_ERR_CLIENT_PRESENT = 0x90000001,
  56. CVP_ERR_CLIENT_FATAL,
  57. CVP_ERR_CMD_QUEUE_FULL,
  58. CVP_ERR_UNUSED = 0x10000000
  59. };
  60. enum hal_property {
  61. HAL_UNUSED_PROPERTY = 0xFFFFFFFF,
  62. };
  63. enum hal_ssr_trigger_type {
  64. SSR_ERR_FATAL = 1,
  65. SSR_SW_DIV_BY_ZERO,
  66. SSR_HW_WDOG_IRQ,
  67. SSR_SESSION_ABORT,
  68. };
  69. enum hal_intra_refresh_mode {
  70. HAL_INTRA_REFRESH_NONE,
  71. HAL_INTRA_REFRESH_CYCLIC,
  72. HAL_INTRA_REFRESH_RANDOM,
  73. HAL_UNUSED_INTRA = 0x10000000,
  74. };
  75. enum cvp_resource_id {
  76. CVP_RESOURCE_NONE,
  77. CVP_RESOURCE_SYSCACHE,
  78. CVP_UNUSED_RESOURCE = 0x10000000,
  79. };
  80. struct cvp_resource_hdr {
  81. enum cvp_resource_id resource_id;
  82. void *resource_handle;
  83. };
  84. struct cvp_hal_fw_info {
  85. char version[CVP_VERSION_LENGTH];
  86. phys_addr_t base_addr;
  87. int register_base;
  88. int register_size;
  89. int irq;
  90. };
  91. enum hal_event_type {
  92. HAL_EVENT_SEQ_CHANGED_SUFFICIENT_RESOURCES,
  93. HAL_EVENT_SEQ_CHANGED_INSUFFICIENT_RESOURCES,
  94. HAL_EVENT_RELEASE_BUFFER_REFERENCE,
  95. HAL_UNUSED_SEQCHG = 0x10000000,
  96. };
  97. /* HAL Response */
  98. #define IS_HAL_SYS_CMD(cmd) ((cmd) >= HAL_SYS_INIT_DONE && \
  99. (cmd) <= HAL_SYS_ERROR)
  100. #define IS_HAL_SESSION_CMD(cmd) ((cmd) >= HAL_SESSION_EVENT_CHANGE && \
  101. (cmd) <= HAL_SESSION_ERROR)
  102. enum hal_command_response {
  103. HAL_NO_RESP,
  104. HAL_SYS_INIT_DONE,
  105. HAL_SYS_SET_RESOURCE_DONE,
  106. HAL_SYS_RELEASE_RESOURCE_DONE,
  107. HAL_SYS_PING_ACK_DONE,
  108. HAL_SYS_PC_PREP_DONE,
  109. HAL_SYS_IDLE,
  110. HAL_SYS_DEBUG,
  111. HAL_SYS_WATCHDOG_TIMEOUT,
  112. HAL_SYS_ERROR,
  113. /* SESSION COMMANDS_DONE */
  114. HAL_SESSION_EVENT_CHANGE,
  115. HAL_SESSION_INIT_DONE,
  116. HAL_SESSION_END_DONE,
  117. HAL_SESSION_SET_BUFFER_DONE,
  118. HAL_SESSION_ABORT_DONE,
  119. HAL_SESSION_START_DONE,
  120. HAL_SESSION_STOP_DONE,
  121. HAL_SESSION_CVP_OPERATION_CONFIG,
  122. HAL_SESSION_FLUSH_DONE,
  123. HAL_SESSION_SUSPEND_DONE,
  124. HAL_SESSION_RESUME_DONE,
  125. HAL_SESSION_SET_PROP_DONE,
  126. HAL_SESSION_GET_PROP_DONE,
  127. HAL_SESSION_RELEASE_BUFFER_DONE,
  128. HAL_SESSION_REGISTER_BUFFER_DONE,
  129. HAL_SESSION_UNREGISTER_BUFFER_DONE,
  130. HAL_SESSION_RELEASE_RESOURCE_DONE,
  131. HAL_SESSION_PROPERTY_INFO,
  132. HAL_SESSION_DUMP_NOTIFY,
  133. HAL_SESSION_ERROR,
  134. HAL_RESPONSE_UNUSED = 0x10000000,
  135. };
  136. struct msm_cvp_capability {
  137. u32 reserved[183];
  138. };
  139. struct cvp_hal_sys_init_done {
  140. u32 dec_codec_supported;
  141. u32 enc_codec_supported;
  142. u32 codec_count;
  143. struct msm_cvp_capability *capabilities;
  144. u32 max_sessions_supported;
  145. };
  146. struct cvp_hal_session_init_done {
  147. struct msm_cvp_capability capability;
  148. };
  149. struct msm_cvp_cb_cmd_done {
  150. u32 device_id;
  151. void *session_id;
  152. enum cvp_status status;
  153. u32 size;
  154. union {
  155. struct cvp_hfi_msg_session_hdr msg_hdr;
  156. struct cvp_resource_hdr resource_hdr;
  157. struct cvp_hal_sys_init_done sys_init_done;
  158. struct cvp_hal_session_init_done session_init_done;
  159. u32 buffer_addr;
  160. } data;
  161. };
  162. struct msm_cvp_cb_data_done {
  163. u32 device_id;
  164. void *session_id;
  165. enum cvp_status status;
  166. u32 size;
  167. u32 client_data;
  168. };
  169. struct msm_cvp_cb_info {
  170. enum hal_command_response response_type;
  171. union {
  172. struct msm_cvp_cb_cmd_done cmd;
  173. struct msm_cvp_cb_data_done data;
  174. } response;
  175. };
  176. enum msm_cvp_hfi_type {
  177. CVP_HFI_IRIS,
  178. };
  179. enum msm_cvp_thermal_level {
  180. CVP_THERMAL_NORMAL = 0,
  181. CVP_THERMAL_LOW,
  182. CVP_THERMAL_HIGH,
  183. CVP_THERMAL_CRITICAL
  184. };
  185. struct msm_cvp_gov_data {
  186. struct cvp_bus_vote_data *data;
  187. u32 data_count;
  188. };
  189. enum msm_cvp_power_mode {
  190. CVP_POWER_NORMAL = 0,
  191. CVP_POWER_LOW,
  192. CVP_POWER_TURBO
  193. };
  194. struct cvp_bus_vote_data {
  195. u32 domain;
  196. u32 ddr_bw;
  197. u32 sys_cache_bw;
  198. enum msm_cvp_power_mode power_mode;
  199. bool use_sys_cache;
  200. };
  201. struct cvp_hal_cmd_sys_get_property_packet {
  202. u32 size;
  203. u32 packet_type;
  204. u32 num_properties;
  205. u32 rg_property_data[1];
  206. };
  207. #define call_hfi_op(q, op, args...) \
  208. (((q) && (q)->op) ? ((q)->op(args)) : 0)
  209. #define PKT_NAME_LEN 24
  210. #define MAX_PKT_IDX 0x200
  211. struct msm_cvp_hfi_defs {
  212. unsigned int size;
  213. unsigned int type;
  214. bool is_config_pkt;
  215. bool checksum_enabled;
  216. enum hal_command_response resp;
  217. char name[PKT_NAME_LEN];
  218. bool force_kernel_fence;
  219. };
  220. struct cvp_hfi_ops {
  221. void *hfi_device_data;
  222. /*Add function pointers for all the hfi functions below*/
  223. int (*core_init)(void *device);
  224. int (*core_release)(void *device);
  225. int (*core_trigger_ssr)(void *device, enum hal_ssr_trigger_type);
  226. int (*session_init)(void *device, void *session_id, void **new_session);
  227. int (*session_end)(void *session);
  228. int (*session_start)(void *session);
  229. int (*session_stop)(void *session);
  230. int (*session_abort)(void *session);
  231. int (*session_set_buffers)(void *sess, u32 iova, u32 size);
  232. int (*session_release_buffers)(void *sess);
  233. int (*session_send)(void *sess, struct eva_kmd_hfi_packet *in_pkt);
  234. int (*session_flush)(void *sess);
  235. int (*scale_clocks)(void *dev, u32 freq);
  236. int (*vote_bus)(void *dev, struct bus_info *bus, unsigned long bw);
  237. int (*get_fw_info)(void *dev, struct cvp_hal_fw_info *fw_info);
  238. int (*session_clean)(void *sess);
  239. int (*get_core_capabilities)(void *dev);
  240. int (*suspend)(void *dev);
  241. int (*resume)(void *dev);
  242. int (*flush_debug_queue)(void *dev);
  243. int (*noc_error_info)(void *dev);
  244. int (*validate_session)(void *sess, const char *func);
  245. int (*pm_qos_update)(void *device);
  246. int (*debug_hook)(void *device);
  247. };
  248. typedef void (*hfi_cmd_response_callback) (enum hal_command_response cmd,
  249. void *data);
  250. typedef void (*msm_cvp_callback) (enum hal_command_response response,
  251. void *callback);
  252. struct msm_cvp_fw {
  253. int cookie;
  254. };
  255. int cvp_hfi_process_msg_packet(u32 device_id,
  256. void *msg_hdr, struct msm_cvp_cb_info *info);
  257. enum cvp_status cvp_hfi_process_sys_init_done_prop_read(
  258. struct cvp_hfi_msg_sys_init_done_packet *pkt,
  259. struct cvp_hal_sys_init_done *sys_init_done);
  260. enum cvp_status hfi_process_session_init_done_prop_read(
  261. struct cvp_hfi_msg_sys_session_init_done_packet *pkt,
  262. struct cvp_hal_session_init_done *session_init_done);
  263. struct cvp_hfi_ops *cvp_hfi_initialize(enum msm_cvp_hfi_type hfi_type,
  264. struct msm_cvp_platform_resources *res,
  265. hfi_cmd_response_callback callback);
  266. void cvp_hfi_deinitialize(enum msm_cvp_hfi_type hfi_type,
  267. struct cvp_hfi_ops *hdev);
  268. int get_pkt_index(struct cvp_hal_session_cmd_pkt *hdr);
  269. int get_pkt_fenceoverride(struct cvp_hal_session_cmd_pkt* hdr);
  270. int get_pkt_index_from_type(u32 pkt_type);
  271. int get_hfi_version(void);
  272. unsigned int get_msg_size(struct cvp_hfi_msg_session_hdr *hdr);
  273. unsigned int get_msg_session_id(void *msg);
  274. unsigned int get_msg_errorcode(void *msg);
  275. int get_msg_opconfigs(void *msg, unsigned int *session_id,
  276. unsigned int *error_type, unsigned int *config_id);
  277. extern const struct msm_cvp_hfi_defs cvp_hfi_defs[MAX_PKT_IDX];
  278. void print_hfi_queue_info(struct cvp_hfi_ops *hdev);
  279. #endif /*__CVP_HFI_API_H__ */